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Intestinal microflora and the interaction with immunocompetent cells

机译:肠道微氟氯和免疫活性细胞的相互作用

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The iintestinal mucosal surface is colonised by the comensal microflora that attains very high numbers of bacterial cells in the distal intestine, more specifically in the colon. At the same time these extensive areas are the interface with the external environment, through which most pathogens initiate iinfectious processes in mammals. Intestinal mechanisms of defense need to discriminate accurately between comensal, symbiotic microflora, and exogenous pathogens. Today we do not fully understand the essence of the mechanism of discrimination but, probably, innate as well as adaptive immune responses participate in this process. We have explored, in in vitro models. the capacity of mucosal immunocompetent cells to discriminate amongst signals delivered by different types of bacteria. We have found at least two different patterns of innate response to gram-negative and gram-positive bacteria, and within this last group big differences are observed between species. We have only worked with non-pathogenic bacteria in what may represent the modulation of the physiological host status. The understanding of these modulatory functions could render a unique possibility for the use of food-borne bacteria to prevent or correct intestinal problems associated with food allergy, inflammatory bowel disease, and autoimmunity.
机译:可患有型粘膜表面由来自远端肠中的高次数达到非常高的细菌细胞的沉淀,更具体地在结肠中进行殖民。与此同时,这些广泛的区域是外部环境的界面,通过该界面,大多数病原体在哺乳动物中发起IinFectifious过程。肠道防御机制需要准确地区分群体,共生微生物或外源病原体。今天,我们并不完全了解歧视机制的本质,但可能是先天的和适应性免疫反应参与这一过程。我们探索了体外模型。粘膜免疫活性细胞的能力区分不同类型细菌递送的信号。我们已经发现至少两种不同的先天反应模式对革兰氏阴性和革兰氏阳性细菌,并且在此期间在这个物种之间观察到的巨大差异。我们只能在可能代表生理宿主状态的调节中使用非致病细菌。对这些调制功能的理解可以使食物传播的细菌能够提供独特的可能性,以防止与食物过敏,炎症性肠病和自身免疫相关的肠道问题。

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